Citation: | Liu L., Wang J.G.. Dynamics of N5+-H electron capture in Debye plasmas[J]. Matter and Radiation at Extremes, 2016, 1(2). doi: 10.1016/j.mre.2016.03.001 |
[1] |
D. Dijkkamp, D. Ćirić, F.J. Heer, Total capture and line-emission cross sections for C6+-, N7+-, O8+-H collisions in the energy range 3–7.5 keV/u, Phys. Rev. Lett. 54 (1985) 1004.10.1103/physrevlett.54.1004
|
[2] |
F.W. Meyer, A.M. Howald, C.C. Havener, R.A. Phaneuf, Low-energy total-electron-capture cross sections for fully stripped and H-like projectiles incident on H and H2, Phys. Rev. A 32 (1985) 3310.10.1103/physreva.32.3310
|
[3] |
W. Fritsch, C.D. Lin, Atomic-orbital-expansion studies of electron transfer in bare-nucleus Z(Z = 2,4−8)—hydrogen-atom collisions, Phys. Rev. A 29 (1984) 3039.10.1103/physreva.29.3039
|
[4] |
R.K. Janev, L.P. Presnyakov, V.P. Shevelko, Physics of Highly Charged Ions, Springer, Berlin, 1985.
|
[5] |
Patricia Barragán, Le Anh-Thu, C.D. Lin, Hyperspherical close-coupling calculations for electron-capture cross sections in low-energy Ne10++H(1s) collisions, Phys. Rev. A 74 (2006) 012720.10.1103/physreva.74.012720
|
[6] |
K. Scheibner, J.C. Weisheit, N.F. Lane, Plasma screening effects on proton-impact excitation of positive ions, Phys. Rev. A 35 (1987) 1252.10.1103/physreva.35.1252
|
[7] |
C.-G. Kim, Y.-D. Jung, Semiclassical electron capture probabilities for proton–hydrogenic ion collisions in dense plasmas, Phys. Plasmas 5 (1998) 2806;10.1063/1.872968 doi: 10.1063/1.873066
|
[8] |
Y.-D. Jung, Plasma screening effects on resonant charge transfer in strongly coupled plasmas, Europhys. Lett. 69 (2005) 753.10.1209/epl/i2004-10402-4
|
[9] |
H. Zhang, J.G. Wang, B. He, Y.B. Qiu, R.K. Janev, Charge exchange and ionization in hydrogen atom-fully stripped ion collisions in Debye plasmas, Phys. Plasmas 14 (2007) 053505.10.1063/1.2736675
|
[10] |
M.K. Pandey, Y.-C. Lin, Y.K. Ho, Investigation of charge transfer and ionization in He-like systems (Li+, Be2+, B3+, C4+, N5+, O6+)-hydrogen atom collisions in Debye plasmas, Phys. Plasmas 20 (2013) 022104.10.1063/1.4790663
|
[11] |
S.L. Zeng, L. Liu, J.G. Wang, R.K. Janev, Atomic collisions with screened Coulomb interactions: Excitation and electron capture in H+ + H collisions, J. Phys. B 41 (2008) 135202.10.1088/0953-4075/41/13/135202
|
[12] |
L. Liu, J.G. Wang, R.K. Janev, Dynamics of He2++H(1s) excitation and electron-capture processes in Debye plasmas, Phys. Rev. A 77 (2008) 032709.10.1103/physreva.77.032709
|
[13] |
L. Liu, J.G. Wang, R.K. Janev, Dynamics of He2++H(1s) ionization with screened Coulomb interactions, Phys. Rev. A 77 (2008) 042712.10.1103/physreva.77.042712
|
[14] |
L. Liu, J.G. Wang, R.K. Janev, Polarization spectroscopy of He+(nl) produced in collisions of He2+ with H in Debye plasmas, Phys. Rev. A 83 (2011) 012712.10.1103/physreva.83.012712
|
[15] |
L. Liu, J.G. Wang, R.K. Janev, Dynamics of O8++H electron capture in Debye plasmas, Phys. Rev. A 79 (2009) 052702.10.1103/physreva.79.052702
|
[16] |
E.J. Shipsey, J.C. Browne, R.E. Olson, Electron capture and ionisation in C5+, N5+, O6++H collisions, J. Phys. B 14 (1981) 869.10.1088/0022-3700/14/5/021
|
[17] |
M. Bendahman, S. Bliman, S. Dousson, D. Hitz, R. Gayet, et al., Electron capture from atomic hydrogen by multiply charged ions in low energy collisions, J. Phys. 46 (1985) 561.10.1051/jphys:01985004604056100
|
[18] |
M. Gargaud, R. McCarroll, Charge transfer in low-energy collisions of N3+, C4+ and N5+ with H and H2, J. Phys. B 18 (1985) 463.10.1088/0022-3700/18/3/021
|
[19] |
J. Hanssen, R. Gayet, C. Harel, A. Salin, Electron capture by C4+, N5+ and O6+ from atomic hydrogen in the keV amu−1 energy range, J. Phys. B 17 (1984) L323.10.1088/0022-3700/17/10/002
|
[20] |
C. Harel, H. Jouin, Electron capture by slow multicharged ions: Core effect on final 1 distributions, J. Phys. B 21 (1988) 859.10.1088/0953-4075/21/5/015
|
[21] |
N. Shimakura, M. Kimura, Electron capture in collisions of N5+ ions with H atoms from the meV to keV energy regions, Phys. Rev. A 44 (1991) 1659.10.1103/physreva.44.1659
|
[22] |
M. Purkait, A. Dhara, S. Sounda, C.R. Mandal, Inelastic processes in the interactions of partially stripped ions of carbon, nitrogen and oxygen with atomic hydrogen at intermediate and high energies, J. Phys. B 34 (2001) 755.10.1088/0953-4075/34/5/305
|
[23] |
S. Sounda, A. Dhara, M. Purkait, C.R. Mandal, State selective electron capture in partially stripped ion-atom interaction at intermediate and high energies, Eur. Phys. J. D 38 (2006) 257.10.1140/epjd/e2006-00008-4
|
[24] |
J. Kuang, C.D. Lin, Convergent TCAO close-coupling calculations for electron transfer, excitation and ionization in intermediate keV He2+-H collisions, J. Phys. B 30 (1997) 101.10.1088/0953-4075/30/1/012
|
[25] |
C.M. Reeves, Use of Gaussian functions in the calculation of wavefunctions for small molecules. I. Preliminary investigations, J. Chem. Phys. 39 (1963) 1.10.1063/1.1733982
|
[26] |
G. Peach, H.E. Saraph, M.J. Seaton, Atomic data for opacity calculations. IX. The lithium isoelectronic sequence, J. Phys. B 21 (1988) 3669.10.1088/0953-4075/21/22/006
|
[27] |
L. Liu, J.G. Wang, R.K. Janev, State-selective electron capture in N5+-H and O6+-H collisions. , J. Phys. B 45 (2012) 015202.10.1088/0953-4075/45/1/015202
|
[28] |
D. Dijkkamp, D. Ćirić, E. Vlieg, A. de Boer, F.J. de Heer, Subshell-selective electron capture in collisions of C4+, N5+, O6+ with H, H2 and He, J. Phys. B 18 (1985) 4763.10.1088/0022-3700/18/24/017
|
[29] |
R.A. Phaneuf, F.W. Meyer, Single-electron capture by multiply charged ions of carbon, nitrogen, and oxygen in atomic and molecular hydrogen, Phys. Rev. A 17 (1978) 534.10.1103/physreva.17.534
|